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The Journal of Biological Chemistry|August 24, 1999
Characterization of the product-inhibited complex in catalysis by human manganese superoxide dismutaseA S Hearn, C Tu, H S Nick, et al.Free Radical Biology & Medicine|February 26, 2011
Detection of nitroxyl (HNO) by membrane inlet mass spectrometryMeredith R Cline, Chingkuang Tu, David N Silverman, et al.Genetics|August 22, 2003
Using evolutionary rates to investigate protein functional divergence and conservation. A case study of the carbonic anhydrasesBjarne Knudsen, Michael M Miyamoto, Philip J Laipis, et al.Journal of the American Chemical Society|May 15, 2009
Elucidation of the proton transport mechanism in human carbonic anhydrase IIC Mark Maupin, Robert McKenna, David N Silverman, et al.The Journal of Biological Chemistry|May 23, 1997
Catalytic properties of murine carbonic anhydrase IVJ D Hurt, C Tu, P J Laipis, et al.The FEBS Journal|July 22, 2006
Triose phosphate isomerase, a novel enzyme-crystallin, and tau-crystallin in crocodile cornea. High accumulation of both proteins during late embryonic developmentThandavarayan Kathiresan, Kannan Krishnan, Vaithilingam Krishnakumar, et al.The Journal of Biological Chemistry|April 2, 2011
Catalysis and pH control by membrane-associated carbonic anhydrase IX in MDA-MB-231 breast cancer cellsYing Li, Chingkuang Tu, Hai Wang, et al.The Journal of Physical Chemistry. A|September 19, 2008
Charge transfer in photoacids observed by stark spectroscopyLisa N Silverman, D B Spry, Steven G Boxer, et al.Genes & Development|October 6, 2000
A Drosophila IkappaB kinase complex required for Relish cleavage and antibacterial immunityN Silverman, R Zhou, S Stöven, et al.The Journal of Biological Chemistry|December 25, 1990
Enhancement of the catalytic activity of carbonic anhydrase III by phosphatesS R Paranawithana, C K Tu, P J Laipis, et al.Pageof 24